Niko Home Control is evolving into MOTIV Building Control. MOTIV is a new brand for intelligent building automation. Built on the trusted foundation of Niko Home Control, MOTIV solutions are designed to make buildings work more naturally for the people inside them. MOTIV helps professionals create smarter, more comfortable buildings. With technology that works quietly in the background. All existing Niko Home Control solutions remain fully compatible with MOTIV. Over time, the full portfolio will move to the MOTIV brand. During this transition, you will see both Niko Home Control (NHC) and MOTIV Building Control (MBC) appear in this documentation. Discover MOTIV at niko.eu/MOTIV
Software Manual
Working version 2.27.1 English Dutch French Slovak Danish German Swedish
Working version 2.27.1 English Dutch French Slovak Danish German Swedish

Detectors/Analogue sensors

Control/Device name

Parameter

Description

Analogue CO2 sensor

CO2 value 0 V

  • The minimum measurement value of the connected CO2 sensor.

  • This is the value at which the CO2 sensor has 0 V output voltage.

  • You can find this value in the technical data of the sensor.

CO2 value 10 V

  • The maximum measurement value of the connected CO2 sensor.

  • This is the value at which the CO2 sensor has 10 V output voltage.

  • You can find this value in the technical data of the sensor.

Analogue humidity sensor

Humidity 0 V

  • The minimum measurement value of the connected humidity sensor.

  • This is the value at which the humidity sensor has 0 V output voltage.

  • You can find this value in the technical data of the sensor.

Humidity 10 V

  • The maximum measurement value of the connected humidity sensor.

  • This is the value at which the humidity sensor has 10 V output voltage.

  • You can find this value in the technical data of the sensor.

Analogue light sensor

Light value 0 V

  • The minimum measurement value of the connected light sensor.

  • This is the value at which the light sensor has 0 V output voltage.

  • You can find this value in the technical data of the sensor.

Light value 10 V

  • The maximum measurement value of the connected light sensor.

  • This is the value at which the light sensor has 10 V output voltage.

  • You can find this value in the technical data of the sensor.

Analogue precipitation sensor

Inversion setting

Setting dependent on the logic of the sensor used:

  • Normal

  • Inverted

Analogue temperature sensor

Temperature value 0 V

  • The minimum measurement value of the connected temperature sensor.

  • This is the value at which the temperature sensor has 0 V output voltage.

  • You can find this value in the technical data of the sensor.

Temperature value 10 V

  • The maximum measurement value of the connected temperature sensor.

  • This is the value at which the temperature sensor has 10 V output voltage.

  • You can find this value in the technical data of the sensor.

Analogue windsensor

Windspeed value 0 V

  • The minimum measurement value of the connected windsensor.

  • This is the value at which the windsensor has 0 V output voltage.

  • You can find this value in the technical data of the sensor.

Windspeed value 10 V

  • The maximum measurement value of the connected windsensor.

  • This is the value at which the windsensor has 10 V output voltage.

  • You can find this value in the technical data of the sensor.